Introduction to Scheme

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Introduction to Scheme

MemCP embeds a small Scheme dialect used by the SQL parsers, query planner, modules, and application endpoints. Start the interactive console with ./memcp lib/main.scm; background services use --no-repl.

Scheme represents calls and code with the same list syntax. That makes the dialect well suited to MemCP's query compiler: the SQL planner constructs Scheme programs as data, optimizes them, and evaluates or compiles them.

The console prints each expression result, which makes the evaluation model easy to explore:

> 12
= 12
> (+ 1 2 3)
= 6
> (+ 2 (* 2 4))
= 10
> (concat "Hello " "World")
= "Hello World"

Startup also loads the configured data directory and Scheme modules before opening the SQL/HTTP listeners. The exact banner and number of startup tests change between releases, so scripts should not parse that text.

Values and calls

<syntaxhighlight lang="scheme"> (+ 1 2) (concat "hello " "world") (map '(1 2 3) (lambda (x) (* x x))) </syntaxhighlight>

Numbers, booleans, strings, symbols, lists, functions, sessions, and storage objects are ordinary values. A list in expression position is a call: its first item is the procedure and the rest are arguments. Whitespace separates forms; parentheses define nesting.

Form Meaning
42, 3.5, true, "text" Literal values
(+ 1 2) Call + with two arguments
'name The symbol name, not the value bound to it
'(1 2 3) Construct a list value instead of calling 1
'("name" "Ada" "active" true) Flat key/value list used as an associative object

Quoting and generated code

Use quoting to build code or data: '(+ 4 5) constructs delayed code, while (eval '(+ 4 5)) evaluates it. Values that should be computed now can be embedded into a quoted outer form; procedure symbols whose execution is delayed remain quoted. This distinction matters throughout the query planner.

<syntaxhighlight lang="scheme"> (set delayed '(+ 4 5)) (eval delayed) /* 9 */ (map '(1 2 3) (lambda (x) (* x x))) </syntaxhighlight>

Do not add or remove parentheses by visual guesswork in large generated expressions. Repository Scheme files are formatted and checked with python3 tools/lint_scm.py.

Functions and scope

Lambdas have exactly a parameter list and one body. Use begin when that body needs several forms:

<syntaxhighlight lang="scheme"> (define greet (lambda (name) (begin (print "greeting " name) (concat "Hello, " name))))

(greet "Ada") </syntaxhighlight>

Functions are closures and may be passed to map, reducers, scanners, parsers, and handlers. define and set create a binding in the current scope in this dialect; set is not an imperative mutation of an outer lexical variable.

Pattern matching and modules

match is the usual way to express alternatives and destructure lists, strings, or regular-expression results. Modules are loaded with import; application entrypoints typically import the required library files and then install handlers or start a server.

<syntaxhighlight lang="scheme"> (match value '(x y) (+ x y) (regex "^/users/([0-9]+)$" path id) id false) </syntaxhighlight>

See Parsers, Lists and Objects, and the matching examples in the repository for the exact pattern forms.

State and concurrency

The dialect is functional by default. set defines a binding in the current scope; it does not imperatively mutate an outer binding. Use (newsession) when code intentionally needs a thread-safe mutable key/value context shared across parallel work.

<syntaxhighlight lang="scheme"> (set request_state (newsession)) (request_state "user_id" 42) (request_state "user_id") /* 42 */ </syntaxhighlight>

Independent functional work may run in parallel. Supported hot procedures can be compiled by the native x86-64 JIT; unsupported shapes remain interpreted without changing language semantics. See Full SCM API documentation, Parallel Computing, and In-Database WebApps and REST Services.

Where to continue